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Temperature distribution and its influence on microstructure of alloy AZ31 during semisolid rheo-rolling process SCIE SCOPUS

Title
Temperature distribution and its influence on microstructure of alloy AZ31 during semisolid rheo-rolling process
Authors
Zhao, ZYGuan, RGZhang, QSDai, CGLee, CSLiu, CM
Date Issued
2013-08
Publisher
MANEY PUBLISHING
Abstract
In the backward slip zone, the buckling direction of the isothermal lines near the surface of the alloy was toward the exit of the roll gap, the buckling direction of the isothermal lines at the centre was toward the entrance of the roll gap and semisolid metal deformation happened. In the forward slip zone, the buckling direction of the isothermal lines was toward the exit of the gap, the bending degree increased from the neutral flow plane to the exit of the roll gap and solid metal deformation took place. The microstructure of the strip became more refined with the decrease in casting temperature. When the casting temperature was between 670 and 690 degrees C and the rolling speed was 0.167 m s(-1), the alloy AZ31 strip with cross-section size of 4 x 160 mm was prepared. The mechanical properties of the product were higher than that of conventional roll casting.
Keywords
Semisolid; Rheo-rolling; Alloy AZ31; Simulation; Temperature; Microstructure; MAGNESIUM ALLOYS; ALUMINUM-ALLOY
URI
https://oasis.postech.ac.kr/handle/2014.oak/14660
DOI
10.1179/1743133613Y.0000000063
ISSN
1364-0461
Article Type
Article
Citation
INTERNATIONAL JOURNAL OF CAST METALS RESEARCH, vol. 26, no. 4, page. 247 - 254, 2013-08
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